Marsh Liam A, Fletcher Adam D, Peyton Anthony J
Department of Electronic and Electrical Engineering, University of Manchester, Manchester M13 9PL, UK.
Sensors (Basel). 2024 Sep 17;24(18):6009. doi: 10.3390/s24186009.
Differential coils are frequently implemented in inductive sensing systems. They can be considered as a single coil that is made up of two or more subcoils, wound in series opposition. They can be used on the transmit or receive side of measurement systems, and, if designed correctly, ensure no coupling between coils under background conditions. By cancelling background coupling, the receive electronics only needs to be able to measure the change in coupling produced by a target. This allows for a more efficient use of the dynamic range, and for larger receive-side amplifier gain, thereby improving SNR. When subcoils are not electrically similar, it can be hard to engineer the coil to be perfectly balanced across a wide bandwidth. This paper presents an analytical model of a resonant differential coil pair that is tested and applied on a planar metal detector for the detection of buried objects. The model demonstrates the capability to balance an arbitrary differential coil pair, which has a broad applicability across a range of inductive sensor applications such as metal detection and non-destructive testing. The method is applied to the practical system. The results show that the correction resulting from this method ensures a stable balance across a significantly enhanced bandwidth. In the case studied here, the bandwidth of the experimental system is increased from 20 kHz to 90 kHz.
差分线圈在电感式传感系统中经常被采用。它们可被视为由两个或更多子线圈串联反向缠绕组成的单个线圈。它们可用于测量系统的发射端或接收端,并且如果设计正确,可确保在背景条件下线圈之间无耦合。通过消除背景耦合,接收电子设备仅需能够测量目标产生的耦合变化。这使得能够更有效地利用动态范围,并实现更大的接收端放大器增益,从而提高信噪比。当子线圈在电气上不相似时,很难将线圈设计成在宽频带上实现完美平衡。本文提出了一种谐振差分线圈对的分析模型,并在用于检测埋藏物体的平面金属探测器上进行了测试和应用。该模型展示了平衡任意差分线圈对的能力,这在诸如金属检测和无损检测等一系列电感式传感器应用中具有广泛的适用性。该方法应用于实际系统。结果表明,该方法所带来的校正确保了在显著增强的带宽上实现稳定平衡。在此处研究的案例中,实验系统的带宽从20千赫兹增加到了90千赫兹。